论文标题

\ c {hi}(3)光谱法的非线性chired多普勒干涉法

Nonlinear chirped Doppler interferometry for \c{hi}(3) spectroscopy

论文作者

Neradovskaia, Elizaveta, Maingot, Benjamin, Chériaux, Gilles, Claudet, Cyrille, Forget, Nicolas, Jullien, Aurélie

论文摘要

因此,四波混合过程在超快光学元件中无处不在,因此必须确定$χ^{(3)} $ tensor的系数。我们引入了一种新型的时间分辨超快光谱法,以表征飞秒时间尺度上的三阶非线性。这种方法被认为是“非线性chired多普勒干涉法”,利用了在强烈的泵脉冲的效果下,在感兴趣的非线性培养基中,传输探针的光学组延迟的变化。可观察到的是探针和上游采样参考脉冲之间的光谱干扰。我们表明,当脉冲被搅动时,检测到的信号会增强,尽管干涉测量值,但该方法对环境相的波动和漂移是免疫的。通过充分搅拌参考脉冲,还可以在时域中检测到探针脉冲的瞬态频率移位,并增强了检测到的非线性信号。在没有异化检测或主动相稳定的情况下检测到频率的频移30 \ 0.01 \%,非线性相移的MRAD低至10 \,对应于30 \,GHz,即载流子频率的0.01 \%。对角和/或非对角线参考眼镜(SIO $ _2 $)和水晶(Al $ _2 $ o $ _3 $,baf $ _2 $,CAF $ _2 $)的特征是表征的。该方法最终用于测量ktioaso $ _4 $(kta)的软振动模式。

Four-wave mixing processes are ubiquitous in ultrafast optics and the determination of the coefficients of the $χ^{(3)}$ tensor is thus essential. We introduce a novel time-resolved ultrafast spectroscopic method to characterize the third-order nonlinearity on the femtosecond time-scale. This approach, coined as "nonlinear chirped Doppler interferometry", makes use of the variation of the optical group delay of a transmitted probe under the effect of an intense pump pulse in the nonlinear medium of interest. The observable is the spectral interference between the probe and a reference pulse sampled upstream. We show that the detected signal is enhanced when the pulses are chirped, and that, although interferometric, the method is immune to environmental phase fluctuations and drifts. By chirping adequately the reference pulse, the transient frequency shift of the probe pulses is also detected in the time domain and the detected nonlinear signal is enhanced. Nonlinear phase shifts as low as 10\,mrad, corresponding to a frequency shift of 30\,GHz, i.e. 0.01\% of the carrier frequency, are detected without heterodyne detection or active phase-stabilization. The diagonal and/or non-diagonal terms of reference glasses (SiO$_2$) and crystals (Al$_2$O$_3$, BaF$_2$, CaF$_2$) are characterized. The method is finally applied to measure the soft vibration mode of KTiOAsO$_4$ (KTA).

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源